| Literature DB >> 30344776 |
Nicholas G Jentsch1, Jared D Hume1, Emily B Crull1, Samer M Beauti1, Amy H Pham1, Julie A Pigza1, Jacques J Kessl1, Matthew G Donahue1.
Abstract
A convenient two-step synthesis of ethyl 4-hydroxy-2-methylquinoline-3-carboxylate derivatives has been developed starting from commercially available 2-aminobenzoic acids. In step 1, the anthranilic acids are smoothly converted to isatoic anhydrides using solid triphosgene in THF. In step 2, the anhydride electrophiles are reacted with the sodium enolate of ethyl acetoacetate, generated from sodium hydroxide, in warm N,N-dimethylacetamide resulting in the formation of substituted quinolines. A degradation-build-up strategy of the ethyl ester at the 3-position allowed for the construction of the α-hydroxyacetic acid residue required for the synthesis of key arylquinolines involved in an HIV integrase project.Entities:
Keywords: HIV integrase; cyclodehydration; isatoic anhydride; masked acyl cyanide; quinoline
Year: 2018 PMID: 30344776 PMCID: PMC6178280 DOI: 10.3762/bjoc.14.229
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.544
Figure 1Investigational non-catalytic HIV-1 Integrase inhibitors.
Scheme 1Boehringer Ingelheim retrosynthesis of quinoline 1.
Scheme 2Quinoline ring condensation strategies.
Scheme 3Isatoic anhydrides from anthranilic acids with triphosgene.
Scheme 4Substituted 2-methyl-4-hydroxyquinolines from isatoic anhydrides and ethyl acetoacetate.
Scheme 5Mechanistic hypothesis for the cyclocondensation reaction.
Scheme 6Quinoline synthesis with ethyl acetylpyruvate.
Scheme 7Elaboration of the benzoic acid ethyl ester to the acetic acid residue.
Scheme 8Umpolung addition of ethoxycarbonyl via a MAC strategy.